Suppr超能文献

非标准光子场的无校正剂量测定法:一种确定辐射探测器可用性的新准则。

Correction-less dosimetry of nonstandard photon fields: a new criterion to determine the usability of radiation detectors.

作者信息

Kamio Y, Bouchard H

出版信息

Phys Med Biol. 2014 Sep 7;59(17):4973-5002. doi: 10.1088/0031-9155/59/17/4973.

Abstract

In the IAEA-AAPM dosimetry formalism, detector measurements in general nonstandard conditions are corrected using the factor k(f(clin),f(msr))(Q(clin),Q(msr)). This factor needs to be evaluated on a case-by-case basis which is difficult to accomplish in practice. The present paper aims to provide a method that allows neglecting correction factors for small and composite IMRT fields by first determining a radiation detector's usability in these fields. Detailed models of nine radiation detectors are built: four ionization chambers (NE2571, A12, A1SL, A14), three small field detectors (PTW31018 microLion, PTW60003 natural diamond, PTW60012 unshielded diode) and two near water-equivalent detectors (alanine, W1 scintillating fiber). Using the egs_chamber Monte Carlo code, dose response functions at 6 MV and 25 MV are sampled for each detector and their corresponding volume of water. These functions are then used with a newly derived criterion to evaluate an upper bound ξ(f(ns),f(msr))(Q(ns),Q(msr)) on the variable ε(f(ns),f(msr))(Q(ns),Q(msr)) if no field collimation/modulation occurs over a given perturbation zone. The variable ε(f(ns),f(msr))(Q(ns),Q(msr)) is defined as the absolute value of the relative deviation from unity of a nonstandard field quality correction factor k(f(ns),f(msr))(Q(ns),Q(msr)). Using the same criterion, perturbation zones are evaluated by finding the smallest field size allowed for correction-less dosimetry with a given tolerance ξ(f(ns),f(msr))(Q(ns),Q(msr)). For composite fields, the sensitivity of detectors to the non-uniformity of virtual symmetric collapsed beams over regions of interest specified by the criterion is studied to estimate an upper bound ξ ̃(f(ns),f(ref))(Q(ns),Q) on ε(f(ns),f(ref))(Q(ns),Q) for a given beam flatness. Finally, a newly defined perturbation function is used to minimize the perturbations of the microLion chamber through density compensation. The theoretical criterion shows good agreement with full Monte Carlo simulations of ε(f(ns),f(msr))(Q(ns) Q(msr)). Perturbation zones are shown to be sensitive to both the energy of the beam and the orientation of the detector. The density-compensated microLion shows significantly improved response in both axial and radial orientations in small and composite IMRT fields. Finally, the new Exradin W1 scintillator is shown to have ξ(f(ns),f(msr))(Q(ns),Q(msr)) values under 1% in small fields. The methods presented in this work theoretically show that correction-less dosimetry of nonstandard field can be accomplished by knowing the limit of usability of radiation detectors in these conditions. Potential applications include small field output factor measurements and absolute absorbed dose to water verification in the QA of clinical IMRT fields.

摘要

在国际原子能机构 - 美国医学物理学家协会(IAEA - AAPM)剂量学形式体系中,一般非标准条件下的探测器测量值使用因子k(f(clin),f(msr))(Q(clin),Q(msr))进行校正。该因子需要根据具体情况逐一评估,而这在实际操作中很难实现。本文旨在提供一种方法,通过首先确定辐射探测器在这些小的和复合调强放疗(IMRT)射野中的可用性,从而忽略对其校正因子的考量。构建了九个辐射探测器的详细模型:四个电离室(NE2571、A12、A1SL、A14)、三个小射野探测器(PTW31018 microLion、PTW60003天然金刚石、PTW60012无屏蔽二极管)以及两个近水等效探测器(丙氨酸、W1闪烁光纤)。使用egs_chamber蒙特卡罗代码,针对每个探测器及其相应的水体模,采样6兆伏(MV)和25兆伏时的剂量响应函数。然后将这些函数与新推导的准则一起使用,以评估在给定扰动区域内无射野准直/调制情况下变量ε(f(ns),f(msr))(Q(ns),Q(msr))的上限ξ(f(ns),f(msr))(Q(ns),Q(msr))。变量ε(f(ns),f(msr))(Q(ns),Q(msr))定义为非标准射野质量校正因子k(f(ns),f(msr))(Q(ns),Q(msr))与1的相对偏差的绝对值。使用相同准则,通过找到在给定容差ξ(f(ns),f(msr))(Q(ns),Q(msr))下无需校正剂量学的最小射野尺寸来评估扰动区域。对于复合射野,研究探测器对由该准则指定的感兴趣区域上虚拟对称压缩射束不均匀性的敏感度,以估计给定射野平坦度下ε(f(ns),f(ref))(Q(ns),Q)的上限ξ ̃(f(ns),f(ref))(Q(ns),Q)。最后,使用新定义的扰动函数通过密度补偿来最小化microLion电离室的扰动。理论准则与ε(f(ns),f(msr))(Q(ns) Q(msr))的全蒙特卡罗模拟结果显示出良好的一致性。结果表明,扰动区域对射束能量和探测器方向均敏感。在小的和复合IMRT射野中,密度补偿后的microLion在轴向和径向方向上的响应均有显著改善。最后,新型Exradin W1闪烁体在小射野中的ξ(f(ns),f(msr))(Q(ns),Q(msr))值低于1%。本文提出的方法从理论上表明,通过了解辐射探测器在这些条件下的可用性极限,可以实现非标准射野的无需校正剂量学。潜在应用包括小射野输出因子测量以及临床IMRT射野质量保证中对水的绝对吸收剂量验证。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验